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Results of search for 'au:"Hanson, David E"'
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Authors
Barber, John L
Hanson, David E
Martin, Richard L
Subramanian, Gopinath
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English
Your search returned 7 results.
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1.
Numerical simulations of rubber networks at moderate to high tensile strains using a purely enthalpic force extension curve for individual chains.
[electronic resource]
by
Hanson, David E
Producer:
20100218
In:
The Journal of chemical physics
vol. 131
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Available from publisher's website
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2.
The distributions of chain lengths in a crosslinked polyisoprene network.
[electronic resource]
by
Hanson, David E
Producer:
20110526
In:
The Journal of chemical physics
vol. 134
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3.
The molecular kink paradigm for rubber elasticity: numerical simulations of explicit polyisoprene networks at low to moderate tensile strains.
[electronic resource]
by
Hanson, David E
Producer:
20111206
In:
The Journal of chemical physics
vol. 135
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4.
How far can a rubber molecule stretch before breaking? Ab initio study of tensile elasticity and failure in single-molecule polyisoprene and polybutadiene.
[electronic resource]
by
Hanson, David E
Martin, Richard L
Producer:
20090413
In:
The Journal of chemical physics
vol. 130
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5.
Quantum chemistry and molecular dynamics studies of the entropic elasticity of localized molecular kinks in polyisoprene chains.
[electronic resource]
by
Hanson, David E
Martin, Richard L
Producer:
20101210
In:
The Journal of chemical physics
vol. 133
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6.
The bond rupture force for sulfur chains calculated from quantum chemistry simulations and its relevance to the tensile strength of vulcanized rubber.
[electronic resource]
by
Hanson, David E
Barber, John L
Producer:
20180329
In:
Physical chemistry chemical physics : PCCP
vol. 20
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7.
The entropy of the rotational conformations of (poly)isoprene molecules and its relationship to rubber elasticity and temperature increase for moderate tensile or compressive strains.
[electronic resource]
by
Hanson, David E
Barber, John L
Subramanian, Gopinath
Producer:
20140806
In:
The Journal of chemical physics
vol. 139
Online resources:
Available from publisher's website
Availability:
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